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ADIN1110CCPZ-R7 数据表(PDF) 26 Page - Analog Devices |
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ADIN1110CCPZ-R7 数据表(HTML) 26 Page - Analog Devices |
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26 / 107 page ![]() Data Sheet ADIN1110 APPLICATIONS INFORMATION analog.com Rev. B | 26 of 107 SYSTEM LEVEL POWER MANAGEMENT Transmit Level = 1.0 V p-p The transmit mode of 1.0 V p-p can be used for shorter reach applications supporting cable lengths up to 400 m where signal amplitude requirements tend to be lower. For applications where the ADIN1110 must operate in a 1.0 V p-p transmit operating mode, the TX2P4_EN pin must be tied high via a 4.7 kΩ resistor (see Figure 14). This configuration forces the ADIN1110 to only operate at 1.0 V p-p transmit operating mode and enables the operation of the ADIN1110 from a signal supply voltage, operating at a lower voltage rail (for example, 1.8 V), allowing the user to minimize power dissipation in the system. Figure 14. Supplies and Capacitors for 1.0 V p-p Transmit Mode Transmit Level = 2.4 V p-p For longer reach applications, a higher signal amplitude of 2.4 V p-p is required. The ADIN1110 is designed to operate with long reach cables up to 1000 m in this mode, requiring a higher AVDD_H supply voltage of 3.3 V. For the ADIN1110 to be able to operate in 2.4 V p-p, the TX2P4_EN pin must be tied low (no external connection required to achieve this due to the presence of an internal pull-down resistor). This mode of operation still allows the 1.0 V p-p operating mode to be selected via MDIO or via autonegotiation. Figure 15 shows an overview of the proposed power configuration. For single supply operation, the same rail can be used to supply the AVDD_H, AVDD_L, and VDDIO supply rails. The DVDD_1P1 1.1 V rail can be derived internally or alternatively provided by an external 1.1 V rail. Note that this configuration requires that AVDD_H is 3.3 V even if the link is established at 1.0 V p-p transmit operating mode via MDIO or autonegotiation. Figure 15. Supplies and Capacitors for 2.4 V p-p and 1.0 V p-p Transmit Mode LED CIRCUIT EXAMPLES The LED_0 and LED_1 pins can be used in various circuit configu- rations depending on the LED polarity mode selected (see LED Polarity Register). The example circuits described in this section provide examples for the three polarity modes available for each LED, as follows: ► Autosense (default) ► Active low ► Active high As described in the LED Functions section, the maximum output current for both LED_0 and LED_1 is 8 mA with a VDDIO = |
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